Nanofibers are thought to enhance cell adhesion, growth, and function. We demonstrate that the choice of building blocks in self-assembling nanofiber systems can be used to control cell behavior. The use of 2 D-coated, self-assembled nanofibers in controlling lens epithelial cells, fibroblasts, and mesenchymal stem cells was investigated, focusing on gene and protein expression related to the fibrotic response. To this end, three nanofibers with different characteristics (morphology, topography, and wettability) were compared with two standard materials frequently used in culturing cells, TCPS, and a collagen type I coating. Cell metabolic activity, cell morphology, and gene and protein expression were analyzed. The most hydrophilic nanofib...
Cell culture has become the basis for understanding the fundamental mechanisms of cell, tissue and o...
YesWhile achieving the spatial organization of cells within 3D assembled nanofiber/cell constructs v...
Cells are sensitive to the microenvironment and multiscale surface topographies were crucial for mod...
Nanofibers are thought to enhance cell adhesion, growth, and function. We demonstrate that the choic...
The fundamental understanding of cell-material interactions plays a central role in the development ...
The study evaluates the ability of electrospun protein nanofibers to display topog. and biochem. cue...
Recent work demonstrates that osteoprogenitor cell culture on nanofiber scaffolds can promote differ...
Understanding cell-material interactions is a prerequisite for the development of bio-inspired mater...
While electrospun nanofibers have demonstrated the potential for novel tissue engineering scaffolds,...
In this study, we investigated whether the nanofibers produced by natural-synthetic polymers can pro...
<p>Since its inception, the field of tissue engineering has sought to rebuild the complexity of norm...
Continuous nanofibers produced by electrospinning are an emerging class of nanomaterials. Despite hi...
Recent studies have shown that polymeric scaffolds as a synthetic extracellular matrix (ECM) are ess...
Electrospun nanofibers have been researched extensively in the culturing of stem cells to understand...
The structural and mechanical properties of a surface often play an integral part in the determinati...
Cell culture has become the basis for understanding the fundamental mechanisms of cell, tissue and o...
YesWhile achieving the spatial organization of cells within 3D assembled nanofiber/cell constructs v...
Cells are sensitive to the microenvironment and multiscale surface topographies were crucial for mod...
Nanofibers are thought to enhance cell adhesion, growth, and function. We demonstrate that the choic...
The fundamental understanding of cell-material interactions plays a central role in the development ...
The study evaluates the ability of electrospun protein nanofibers to display topog. and biochem. cue...
Recent work demonstrates that osteoprogenitor cell culture on nanofiber scaffolds can promote differ...
Understanding cell-material interactions is a prerequisite for the development of bio-inspired mater...
While electrospun nanofibers have demonstrated the potential for novel tissue engineering scaffolds,...
In this study, we investigated whether the nanofibers produced by natural-synthetic polymers can pro...
<p>Since its inception, the field of tissue engineering has sought to rebuild the complexity of norm...
Continuous nanofibers produced by electrospinning are an emerging class of nanomaterials. Despite hi...
Recent studies have shown that polymeric scaffolds as a synthetic extracellular matrix (ECM) are ess...
Electrospun nanofibers have been researched extensively in the culturing of stem cells to understand...
The structural and mechanical properties of a surface often play an integral part in the determinati...
Cell culture has become the basis for understanding the fundamental mechanisms of cell, tissue and o...
YesWhile achieving the spatial organization of cells within 3D assembled nanofiber/cell constructs v...
Cells are sensitive to the microenvironment and multiscale surface topographies were crucial for mod...